一种用于克服非小细胞肺癌治疗中抗原异质性的多靶向 CAR-T 细胞平台
A Multi-Targeting Chimeric Antigen Receptor-T Cell Platform to Overcome Antigen Heterogeneity in the Treatment of Non-Small Cell Lung Cancer.
这些发现支持采用多靶点CAR-T 策略来应对NSCLC及可能其他实体瘤中的抗原异质性。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Methylseleninic acid overcomes gefitinib resistance through asparagine-MET-TOPK signaling axis in non-small cell lung cancer cells.
Methylseleninic acid overcomes gefitinib resistance through asparagine-MET-TOPK signaling axis in non-small cell lung cancer cells.
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获得性耐药削弱了基于表皮生长因子受体(EGFR)酪氨酸激酶抑制剂(TKI)的非小细胞肺癌(NSCLC)治疗的疗效,而肝细胞生长因子受体(MET)的激活是癌细胞获得难治性表型的关键策略之一。
然而,调控MET活性的机制仍有待进一步阐明。以吉非替尼耐药的HCC827GR细胞系为模型,我们揭示了由半胱氨酸偏好性转运体2(ASCT2)、胱氨酸/谷氨酸反向转运体溶质载体家族7成员11(SLC7A11)和天冬酰胺合成酶(ASNS)表达升高所反映的氨基酸代谢失调可能有助于HCC827GR细胞的生存优势,并使这些细胞相比亲本HCC827细胞对天冬酰胺(ASN)剥夺更为敏感。
我们进一步鉴定出ASNS表达增加是HCC827GR细胞中MET激活的促进因素。更重要的是,我们发现甲基硒酸(MSeA),一种甲基硒醇的前体,在HCC827GR异种移植模型中有效抑制了肿瘤生长,这与细胞内ASN含量的降低以及MET-T淋巴因子激活的杀伤细胞来源蛋白激酶(TOPK)信号轴的失活相关。
最后,我们证明了MSeA与吉非替尼联合在HCC827GR细胞中诱导了协同生长抑制。我们的研究结果揭示了ASN-MET-TOPK信号轴作为导致吉非替尼耐药的一种新机制,并且吉非替尼与MSeA的联合使用有望提高吉非替尼耐药NSCLC的疗效。
Acquired resistance compromises the efficacy of epidermal growth factor receptor (EGFR) tyrosine kinase inhibitor (TKI)-based therapy for non-small cell lung cancer (NSCLC), and activation of hepatocyte growth factor receptor (MET) is one of the pivotal strategies for cancer cells to acquire refractory phenotype.
However, the mechanisms involved in regulating MET activity remain to be further elucidated. Using gefitinib-resistant HCC827GR cell line as a model, we unraveled that the dysregulated amino acid metabolisms reflected by elevated expression of cysteine-preferring transporter 2 (ASCT2), cystine/glutamate antiporter solute carrier family 7 member 11 (SLC7A11) and asparagine synthetase (ASNS) might contribute to survival advantage of HCC827GR cells, and rendered the cells more sensitive to asparagine (ASN) deprivation compared to parental HCC827 cells.
We further identified that the increased ASNS expression is a contributing factor for the activation of MET in HCC827GR cells. More importantly, we found that methylseleninic acid (MSeA), a precursor of methylselenol, effectively suppressed tumor growth in HCC827GR xenograft model, which is associated with decrease of intracellular ASN content along with inactivation of MET- T-lymphokine-activated killer cell-originated protein kinase (TOPK) signaling axis.
Finally, we demonstrated that combination of MSeA and gefitinib induced a synergistic growth inhibition in HCC827GR cells. The findings of our work reveal that ASN-MET-TOPK signaling axis as a novel mechanism contributed to gefitinib-resistance and combined utilization of gefitinib and MSeA holds potential to improve the efficacy for gefitinib-resistant NSCLC.
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